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Lang Hames079df9a2018-10-15 22:56:10 +00001//===- RTDyldObjectLinkingLayerTest.cpp - RTDyld linking layer unit tests -===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "llvm/ExecutionEngine/Orc/RTDyldObjectLinkingLayer.h"
11#include "OrcTestCommon.h"
12#include "llvm/ExecutionEngine/ExecutionEngine.h"
13#include "llvm/ExecutionEngine/Orc/CompileUtils.h"
14#include "llvm/ExecutionEngine/Orc/LambdaResolver.h"
15#include "llvm/ExecutionEngine/Orc/Legacy.h"
16#include "llvm/ExecutionEngine/Orc/NullResolver.h"
17#include "llvm/ExecutionEngine/SectionMemoryManager.h"
18#include "llvm/IR/Constants.h"
19#include "llvm/IR/LLVMContext.h"
20#include "gtest/gtest.h"
21
22using namespace llvm;
23using namespace llvm::orc;
24
25namespace {
26
27class LegacyRTDyldObjectLinkingLayerExecutionTest : public testing::Test,
28 public OrcExecutionTest {
29
30};
31
32class SectionMemoryManagerWrapper : public SectionMemoryManager {
33public:
34 int FinalizationCount = 0;
35 int NeedsToReserveAllocationSpaceCount = 0;
36
37 bool needsToReserveAllocationSpace() override {
38 ++NeedsToReserveAllocationSpaceCount;
39 return SectionMemoryManager::needsToReserveAllocationSpace();
40 }
41
42 bool finalizeMemory(std::string *ErrMsg = nullptr) override {
43 ++FinalizationCount;
44 return SectionMemoryManager::finalizeMemory(ErrMsg);
45 }
46};
47
48TEST(LegacyRTDyldObjectLinkingLayerTest, TestSetProcessAllSections) {
49 class MemoryManagerWrapper : public SectionMemoryManager {
50 public:
51 MemoryManagerWrapper(bool &DebugSeen) : DebugSeen(DebugSeen) {}
52 uint8_t *allocateDataSection(uintptr_t Size, unsigned Alignment,
53 unsigned SectionID,
54 StringRef SectionName,
55 bool IsReadOnly) override {
56 if (SectionName == ".debug_str")
57 DebugSeen = true;
58 return SectionMemoryManager::allocateDataSection(Size, Alignment,
59 SectionID,
60 SectionName,
61 IsReadOnly);
62 }
63 private:
64 bool &DebugSeen;
65 };
66
67 bool DebugSectionSeen = false;
68 auto MM = std::make_shared<MemoryManagerWrapper>(DebugSectionSeen);
69
70 ExecutionSession ES;
71
72 LegacyRTDyldObjectLinkingLayer ObjLayer(ES, [&MM](VModuleKey) {
73 return LegacyRTDyldObjectLinkingLayer::Resources{
74 MM, std::make_shared<NullResolver>()};
75 });
76
77 LLVMContext Context;
78 auto M = llvm::make_unique<Module>("", Context);
79 M->setTargetTriple("x86_64-unknown-linux-gnu");
80 Type *Int32Ty = IntegerType::get(Context, 32);
81 GlobalVariable *GV =
82 new GlobalVariable(*M, Int32Ty, false, GlobalValue::ExternalLinkage,
83 ConstantInt::get(Int32Ty, 42), "foo");
84
85 GV->setSection(".debug_str");
86
87
88 // Initialize the native target in case this is the first unit test
89 // to try to build a TM.
90 OrcNativeTarget::initialize();
91 std::unique_ptr<TargetMachine> TM(
92 EngineBuilder().selectTarget(Triple(M->getTargetTriple()), "", "",
93 SmallVector<std::string, 1>()));
94 if (!TM)
95 return;
96
97 auto Obj = SimpleCompiler(*TM)(*M);
98
99 {
100 // Test with ProcessAllSections = false (the default).
101 auto K = ES.allocateVModule();
102 cantFail(ObjLayer.addObject(
103 K, MemoryBuffer::getMemBufferCopy(Obj->getBuffer())));
104 cantFail(ObjLayer.emitAndFinalize(K));
105 EXPECT_EQ(DebugSectionSeen, false)
106 << "Unexpected debug info section";
107 cantFail(ObjLayer.removeObject(K));
108 }
109
110 {
111 // Test with ProcessAllSections = true.
112 ObjLayer.setProcessAllSections(true);
113 auto K = ES.allocateVModule();
114 cantFail(ObjLayer.addObject(K, std::move(Obj)));
115 cantFail(ObjLayer.emitAndFinalize(K));
116 EXPECT_EQ(DebugSectionSeen, true)
117 << "Expected debug info section not seen";
118 cantFail(ObjLayer.removeObject(K));
119 }
120}
121
122TEST_F(LegacyRTDyldObjectLinkingLayerExecutionTest, NoDuplicateFinalization) {
123 if (!SupportsJIT)
124 return;
125
126 ExecutionSession ES;
127
128 auto MM = std::make_shared<SectionMemoryManagerWrapper>();
129
130 std::map<orc::VModuleKey, std::shared_ptr<orc::SymbolResolver>> Resolvers;
131
132 LegacyRTDyldObjectLinkingLayer ObjLayer(ES, [&](VModuleKey K) {
133 auto I = Resolvers.find(K);
134 assert(I != Resolvers.end() && "Missing resolver");
135 auto R = std::move(I->second);
136 Resolvers.erase(I);
137 return LegacyRTDyldObjectLinkingLayer::Resources{MM, std::move(R)};
138 });
139 SimpleCompiler Compile(*TM);
140
141 // Create a pair of modules that will trigger recursive finalization:
142 // Module 1:
143 // int bar() { return 42; }
144 // Module 2:
145 // int bar();
146 // int foo() { return bar(); }
147 //
148 // Verify that the memory manager is only finalized once (for Module 2).
149 // Failure suggests that finalize is being called on the inner RTDyld
150 // instance (for Module 1) which is unsafe, as it will prevent relocation of
151 // Module 2.
152
153 ModuleBuilder MB1(Context, "", "dummy");
154 {
155 MB1.getModule()->setDataLayout(TM->createDataLayout());
156 Function *BarImpl = MB1.createFunctionDecl<int32_t(void)>("bar");
157 BasicBlock *BarEntry = BasicBlock::Create(Context, "entry", BarImpl);
158 IRBuilder<> Builder(BarEntry);
159 IntegerType *Int32Ty = IntegerType::get(Context, 32);
160 Value *FourtyTwo = ConstantInt::getSigned(Int32Ty, 42);
161 Builder.CreateRet(FourtyTwo);
162 }
163
164 auto Obj1 = Compile(*MB1.getModule());
165
166 ModuleBuilder MB2(Context, "", "dummy");
167 {
168 MB2.getModule()->setDataLayout(TM->createDataLayout());
169 Function *BarDecl = MB2.createFunctionDecl<int32_t(void)>("bar");
170 Function *FooImpl = MB2.createFunctionDecl<int32_t(void)>("foo");
171 BasicBlock *FooEntry = BasicBlock::Create(Context, "entry", FooImpl);
172 IRBuilder<> Builder(FooEntry);
173 Builder.CreateRet(Builder.CreateCall(BarDecl));
174 }
175 auto Obj2 = Compile(*MB2.getModule());
176
177 auto K1 = ES.allocateVModule();
178 Resolvers[K1] = std::make_shared<NullResolver>();
179 cantFail(ObjLayer.addObject(K1, std::move(Obj1)));
180
181 auto K2 = ES.allocateVModule();
182 auto LegacyLookup = [&](const std::string &Name) {
183 return ObjLayer.findSymbol(Name, true);
184 };
185
186 Resolvers[K2] = createSymbolResolver(
187 [&](const SymbolNameSet &Symbols) {
188 return cantFail(
189 getResponsibilitySetWithLegacyFn(Symbols, LegacyLookup));
190 },
191 [&](std::shared_ptr<AsynchronousSymbolQuery> Query,
192 const SymbolNameSet &Symbols) {
193 return lookupWithLegacyFn(ES, *Query, Symbols, LegacyLookup);
194 });
195
196 cantFail(ObjLayer.addObject(K2, std::move(Obj2)));
197 cantFail(ObjLayer.emitAndFinalize(K2));
198 cantFail(ObjLayer.removeObject(K2));
199
200 // Finalization of module 2 should trigger finalization of module 1.
201 // Verify that finalize on SMMW is only called once.
202 EXPECT_EQ(MM->FinalizationCount, 1)
203 << "Extra call to finalize";
204}
205
206TEST_F(LegacyRTDyldObjectLinkingLayerExecutionTest, NoPrematureAllocation) {
207 if (!SupportsJIT)
208 return;
209
210 ExecutionSession ES;
211
212 auto MM = std::make_shared<SectionMemoryManagerWrapper>();
213
214 LegacyRTDyldObjectLinkingLayer ObjLayer(ES, [&MM](VModuleKey K) {
215 return LegacyRTDyldObjectLinkingLayer::Resources{
216 MM, std::make_shared<NullResolver>()};
217 });
218 SimpleCompiler Compile(*TM);
219
220 // Create a pair of unrelated modules:
221 //
222 // Module 1:
223 // int foo() { return 42; }
224 // Module 2:
225 // int bar() { return 7; }
226 //
227 // Both modules will share a memory manager. We want to verify that the
228 // second object is not loaded before the first one is finalized. To do this
229 // in a portable way, we abuse the
230 // RuntimeDyld::MemoryManager::needsToReserveAllocationSpace hook, which is
231 // called once per object before any sections are allocated.
232
233 ModuleBuilder MB1(Context, "", "dummy");
234 {
235 MB1.getModule()->setDataLayout(TM->createDataLayout());
236 Function *BarImpl = MB1.createFunctionDecl<int32_t(void)>("foo");
237 BasicBlock *BarEntry = BasicBlock::Create(Context, "entry", BarImpl);
238 IRBuilder<> Builder(BarEntry);
239 IntegerType *Int32Ty = IntegerType::get(Context, 32);
240 Value *FourtyTwo = ConstantInt::getSigned(Int32Ty, 42);
241 Builder.CreateRet(FourtyTwo);
242 }
243
244 auto Obj1 = Compile(*MB1.getModule());
245
246 ModuleBuilder MB2(Context, "", "dummy");
247 {
248 MB2.getModule()->setDataLayout(TM->createDataLayout());
249 Function *BarImpl = MB2.createFunctionDecl<int32_t(void)>("bar");
250 BasicBlock *BarEntry = BasicBlock::Create(Context, "entry", BarImpl);
251 IRBuilder<> Builder(BarEntry);
252 IntegerType *Int32Ty = IntegerType::get(Context, 32);
253 Value *Seven = ConstantInt::getSigned(Int32Ty, 7);
254 Builder.CreateRet(Seven);
255 }
256 auto Obj2 = Compile(*MB2.getModule());
257
258 auto K = ES.allocateVModule();
259 cantFail(ObjLayer.addObject(K, std::move(Obj1)));
260 cantFail(ObjLayer.addObject(ES.allocateVModule(), std::move(Obj2)));
261 cantFail(ObjLayer.emitAndFinalize(K));
262 cantFail(ObjLayer.removeObject(K));
263
264 // Only one call to needsToReserveAllocationSpace should have been made.
265 EXPECT_EQ(MM->NeedsToReserveAllocationSpaceCount, 1)
266 << "More than one call to needsToReserveAllocationSpace "
267 "(multiple unrelated objects loaded prior to finalization)";
268}
269
270TEST_F(LegacyRTDyldObjectLinkingLayerExecutionTest, TestNotifyLoadedSignature) {
271 ExecutionSession ES;
272 LegacyRTDyldObjectLinkingLayer ObjLayer(
273 ES,
274 [](VModuleKey) {
275 return LegacyRTDyldObjectLinkingLayer::Resources{
276 nullptr, std::make_shared<NullResolver>()};
277 },
278 [](VModuleKey, const object::ObjectFile &obj,
279 const RuntimeDyld::LoadedObjectInfo &info) {});
280}
281
282} // end anonymous namespace